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Intrinsic Electronic Structures and Optical Anisotropy of α- and β-Phase Copper Phthalocyanine Molecular Crystals

机译:α-和β相铜酞菁分子晶体的内在电子结构和光学各向异性

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Electronic structures and optical anisotropy of α- and β-phase copper phthalocyanine (CuPc) molecular crystals have been systemically investigated by first-principles calculations based on Density Functional Theory (DFT). Both crystals were shown to be small gap organic semiconductors with relatively flat and dispersionless bands. The α-CuPc was a direct band gap semiconductor, whereas the β-CuPc was an indirect band gap semiconductor. The analysis of Partial Density of States (PDOS) showed that the top of valance band was mainly contributed by N 2p and C 2p states; the bottom of the conduction band was mainly contributed by N 2p, C 2p and Cu 3d states. The interband optical properties, such as the complex dielectric function, absorption coefficient and complex refractive index, showed a high degree of anisotropy that can be traced to the unique structures of these molecular crystals. The calculated dielectric function for α-CuPc in the low energy region was consistent with the experiment results proposed in the literature. These calculations provided particular interpretations on electronic structure and optical properties of α- and β-CuPc organic semiconductors that were critical to optoelectronics, which would promote the applications of these materials in semiconductor optoelectronic devices.
机译:通过基于密度泛函理论(DFT)的一致原理计算,通过全身研究了α-和β相铜酞菁(CUPC)分子晶体的电子结构和光学各向异性。两个晶体被显示为小间隙有机半导体,具有相对平坦和分散的带。 α-CUPC是直接带隙半导体,而β-CUPC是间接带隙半导体。分析状态的偏密度(PDOS)表明,帷幔带的顶部主要由N 2P和C 2P状态贡献;传导带的底部主要由N 2P,C 2P和CU 3D状态贡献。间带光学性质,例如复杂的介电函数,吸收系数和复杂折射率,显示出高度的各向异性,可以追溯到这些分子晶体的独特结构。低能量区域中α-Cupc的计算介电功能与文献中提出的实验结果一致。这些计算提供了对对光电子至关重要的α-和β-Cupc有机半导体的电子结构和光学性质的特定解释,这将促进这些材料在半导体光电器件中的应用。

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